Zobrazeno 1 - 9
of 9
pro vyhledávání: '"Ming Fong Sie"'
Publikováno v:
IEEE Nanotechnology Magazine. 17:31-37
Publikováno v:
Advances in Science, Technology and Engineering Systems Journal. 7:106-115
Publikováno v:
Sensors, Vol 11, Iss 12, Pp 11629-11648 (2011)
This paper presents the design concept of a bio-botanic robot which demonstrates its behavior based on plant growth. Besides, it can reflect the different phases of plant growth depending on the proportional amounts of light, temperature and water. T
Externí odkaz:
https://doaj.org/article/fa842e658d664ad2b64f83037231fa5b
Publikováno v:
BRAINS
We design a Multi-Layer Aggregate Verification (MLAV) solution to improve supply chain management with IoT Blockchain devices. We apply MLAV to IoT Blockchain applications in Agriculture 4.0 to demonstrate the feasibility of our solutions and models.
Autor:
Kuan-Yu Chiang, Seth Austin Harding, Ming-Fong Sie, Hao-Chen Tsai, Shih-Wei Liao, Yen-Chih Liao, Yen-Shuo Su
Publikováno v:
BRAINS
Inspired by the announcement of SDGs and the recent campaign about the algal reef protection in Taiwan, this study introduces a novel methodology: view-based Federated Byzantine Agreement System (vFBAS), adopting functions from both view-based Byzant
Publikováno v:
IEEE ICBC
Both the number of blockchains and the discovered number of applications of blockchain are ever-increasing. Understanding how different blockchains compare in performance has become more important than ever, yet each blockchian paper uses its own inc
Autor:
Chung-Liang Chang, Ming-Fong Sie
Publikováno v:
HortScience. 47:762-770
A multistaged fuzzy logic control method was used in the development of a bionic botanical growth control system. The growth mode combined fuzzy logic inference with expert knowledge to regulate the growth rate of plants. First, environment factors s
Publikováno v:
Sensors
Volume 11
Issue 12
Pages 11629-11648
Sensors (Basel, Switzerland)
Sensors, Vol 11, Iss 12, Pp 11629-11648 (2011)
Volume 11
Issue 12
Pages 11629-11648
Sensors (Basel, Switzerland)
Sensors, Vol 11, Iss 12, Pp 11629-11648 (2011)
This paper presents the design concept of a bio-botanic robot which demonstrates its behavior based on plant growth. Besides, it can reflect the different phases of plant growth depending on the proportional amounts of light, temperature and water. T
Autor:
Chung-Liang Chang, Ming-Fong Sie
Publikováno v:
2010 Pittsburgh, Pennsylvania, June 20 - June 23, 2010.
This paper applies the concept of bionics to digital life and utilizes bionics techniques to mimic the characteristics of creatures so as meet the demand of facility digitalized in all aspects of life. The paper proposes a bio-robotic plant system (B